• 제목/요약/키워드: Rapid Prototyping Technique

검색결과 87건 처리시간 0.028초

쾌속조형기법을 이용한 생분해성 스텐트용 메쉬필름의 약물방출거동 효과 (Effect of Drug Eluting Uniformity for Biodegradable Stent by Solid Freeform Fabrication)

  • 정신영;김양은;고영주;신왕수;이준희;김완두;유영은;박수아
    • 폴리머
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    • 제38권1호
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    • pp.93-97
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    • 2014
  • 약물방출 고분자 코팅 스텐트는 수술후 재협착을 획기적으로 줄였지만, 약물방출이 균일한 구조체를 제작하는 것이 어렵고 체내에 구조체를 영구적으로 남겨야 하는 부담을 여전히 가지고 있다. 이를 해결하는 방안으로 생분해성 고분자로 스텐트를 제작하는 방법들이 활발하게 연구되고 있다. 본 연구에서는 조형가공기술(solid freeform fabrication, SFF)의 하나인 쾌속조형기법(rapid prototyping technique)의 3차원 플로팅(3D plotting) 기술을 이용하여 파크리탁셀(PTX) 약물을 함유한 폴리카프로락톤(PCL) 3차원 구조체를 제작하였고, 생분해성 PCL 고분자로부터 PTX의 방출거동과 스텐트 제작 가능성을 고찰하였다. 약물을 포함한 구조체의 표면특성을 SEM으로 확인한 결과 굴곡이 자연스럽고 매끄러운 표면을 가지고 있었다. FTIR을 통해서 약물이 성공적으로 구조체에 포함되었음을 확인하였고, NMR과 HPLC를 통해서 PCL 구조체 중의 PCL함량과 PTX의 서서히 방출됨을 확인되었다. 또한 세포실험을 통해 구조체에서 방출된 약물이 생물학적으로 활성을 유지하고 있으며, 반복제작된 구조체에서도 균일한 활성의 약물이 방출됨을 확인하였다. 이와같은 쾌속조형기법을 이용하여 약물을 포함하는 구조체를 제작하고 분석함으로써, 생분해성 고분자 스텐트로서의 적용가능성을 제시하였다.

3차원 조형장비 선정을 위한 복합 다요소 의사결정 구조 모델 개발에 관한 연구 (A decision making framework model for the selection of a RP using hybrid multiple attribute decision making techniques)

  • 변홍석
    • 한국기계가공학회지
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    • 제7권3호
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    • pp.87-95
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    • 2008
  • The purpose of this study is to provide a decision support to select an appropriate rapid prototyping(RP) machine that suits the application of a part. Selection factors include concept model, form/fit/functional model, pattern model for molding, material property, build time and part cost that greatly affect the performance of RP machines. However, the selection of a RP is not an easy decision because they are uncertain and vague. For this reason, the aim of this research is to propose hybrid multiple attribute decision making approaches to effectively evaluate RP machines. In addition, because subjective considerations are relevant to selection decision, a fuzzy logic approach is adopted. The proposed selection procedure consists of several steps. First, we identify RP machines that the users consider. After constructing the evaluation criteria, we calculate the weights of the criteria by applying the fuzzy Analytic Hierarchy Process(AHP) method. Finally, we construct the fuzzy Technique of Order Preference by Similarity to Ideal Solution(TOPSIS) method to achieve the ranking order of all machines providing the decision information for the selection of RP machines.

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다축 RP 소프트웨어 기술을 이용한 스캐폴드 제조 장비 개발 (Development of Scaffold Fabrication System using Multi-axis RP Software Technique)

  • 박정환;이준희;조현욱;이수희;박수아;김완두
    • 한국정밀공학회지
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    • 제29권1호
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    • pp.33-40
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    • 2012
  • The scaffold serves as 3D substrate for the cells adhesion and mechanical support for the newly grown tissue by maintaining the 3D structure for the regeneration of tissue and organ. In this paper, we proposed integrated scaffold fabrication system using multi-axis rapid prototyping (RP) technology. It can fabricate various types of scaffolds: arbitrary sculptured shape, primitive shape, and tube shape scaffolds by layered dispensing biocompatible/ biodegradable polymer strands in designated patterns. In order to fabricate the 3D scaffold, we need to generate the plotting path way for the scaffold fabrication system. We design a data processing program - scaffold plotting software, which can convert the 3D STL file, primitive and tube model images into the NC code for the system. Finally, we fabricated the customized 3D scaffolds with high accuracy using the plotting software and the fabrication system.

고속적층조형법에서 최적 적층방향의 자동결정 (The Automatic Determination of the Optimal Build-Direction in Rapid Prototyping)

  • 채희창
    • 한국공작기계학회:학술대회논문집
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    • 한국공작기계학회 1997년도 춘계학술대회 논문집
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    • pp.150-155
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    • 1997
  • Rapid Prototyping(RP) is the technique which is used to make prototypes or functional parts directly using the 3-D solid data. Before building the prototype, several processes such as transfering 3D data from CAD system(STL) determination of build-direction, adding support structure and slicing are required. Among the above processes. determination of build-direction is the target of this study. The build direction is determined by many factors according to the objective of the user, like part accuracy, number of support structure, build time, amount of trapped volume, etc, But it is not easy to determine the build-direction because there are many factors and some factors have dependent properties with one another. So, in this study the part accuracy, the number of support structures and build time are considered as the main factor to determine the optimal build-direction. To determine the optimal build-direction for increasing part accuracy, sum of projected area which caused stairstepping effect was considered. The less the projected area is the better part accuracy is About the optimal build-direction to minimize the amount of support structure, sum of projected area of facets that require support structures was considered. About the build time, we considered the minimum height of part we intended. About the build time, we considered the minimun height of part we intended to make.

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가변 적층 쾌속 조형 공정 개발을 위한 단위형상조각 자동 생성 소프트웨어 개발 및 적용 예 (Software Development for Automatic Generation of Unit Shape Part for Variable Lamination Manufacturing Process)

  • 이상호;김태화;안동규;양동열;채희창
    • 한국정밀공학회지
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    • 제18권8호
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    • pp.64-70
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    • 2001
  • In all the Rapid Prototyping (RP) techniques, the computer-aided design (CAD) model of a three-dimensional part is sliced into horizontal layers of uniform, but not necessarily constant, thickness in the building direction. Each cross- sectional layer is successively deposited and, at the same time, bonded onto the previous layer. The stacked layers form a physical part of the model. The objective of this study is to develop a software for automatic generation of unit shape part(USP) for a new RP process, Variable Lamination Manufacturing using the linear hotwire cutting technique and expandable polystyrene foam sheet as part material(VLM-S). In order to examine the applicability of the developed software to VLM-S, USPs of general three-dimensional shapes, such as an auto-shift lever knob and a pyramid shape were generated.

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Feasibility study on developing productivity and quality improved three dimensional printing process

  • Lee, Won-Hee;Kim, Dong-Soo;Lee, Taik-Min;Lee, Min-Cheol
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2005년도 ICCAS
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    • pp.2160-2163
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    • 2005
  • Solid freeform fabrication (SFF) technology plays a major role in industry and represents a reasonable percentage of industrial rapid prototyping/tooling/manufacturing (RP/RT/RM) development applications. However, SFF technology still has long way to progress to achieve satisfactory process speed, surface finish and overall quality improvement of its application. Today, three dimensional printing (3DP) technique that is one of SFF technology is receiving many interests, and is applied by various fields. It can fabricate three dimensional objects of solid freeform with high speed and low cost using ink jet printing technology. However, need long curing time after manufacture completion. And it must do post-processing process necessarily to heighten strength of objects because strength of fabricated objects is very weak. Therefore, in this study, we proposed an improved 3DP process that can solve problems of conventional 3DP process. The general 3DP process is method to spout binder simply through printer head on powder, but proposed process is method to cure jetted UV resin by UV lamp after jet UV resin using printhead on powder. The hardening of resin is achieved strongly at early time by UV lamp in proposed method. So, the proposed process can fabricate three dimensional objects with high speed without any post-processing.

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쾌속조형공정 선정을 위한 지원 시스템 (A Decision Support System for the Selection of a Rapid Prototyping Process)

  • 변홍석;이관행
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2003년도 춘계학술대회 논문집
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    • pp.5-8
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    • 2003
  • This paper presents a methodology to be able to select an appropriate RP system that suits the end use of a part. Evaluation factors used in process selection include major attributes such as accuracy, roughness, strength, elongation, part cost and build time that greatly affect the performance of RP systems. Crisp values such as accuracy and surface roughness are obtained with a new test part developed. The test part is designed with conjoint analysis to reflect users' preference. The part cost and build time that have approximate ranges due to cost and many variable parameters are presented by linguistic values that can be described with triangular fuzzy numbers. Based on the evaluation values obtained, an appropriate RP process for a specific part application is selected by using the modified TOPSIS(Technique of Order Preference by Similarity to Ideal Solution) method. It uses crisp data as well as linguistic variables, and each weight on the alternatives is assigned by using pair-wise comparison matrix. The ranking order helps the decision making of the selection of RP systems.

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Computer Aided Process Planning for 3D Printing

  • Park, Hong-Seok;Tran, Ngoc-Hien
    • 한국생산제조학회지
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    • 제24권2호
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    • pp.148-154
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    • 2015
  • Computer aided process planning (CAPP) keeps an important role between the design and manufacturing engineering processes. A CAPP system is a digital link between a computer aided design (CAD) model and manufacturing instructions. CAPP have been researched and applied in manufacturing filed, however, one manufacturing area where CAPP has not been extensively researched is rapid prototyping (RP). RP is a technique for creating directly a three dimensional CAD data into a physical prototype. RP enables to build physical models automatically and to use to reduce the time for the product development cycle as well as to improve the final quality of the designed product. Three-dimensional (3D) printing is one kind of RP that creates three-dimensional objects from CAD models. The paper presents a computer aided process planning system for printing medical products. 3D printing has been used to solve complex medical problems such as surgical instruments, bioengineered products, medical implants, and surgical guides.

FDM 방식 3D 프린팅 출력물의 화학적 후처리 공정 연구 (Study of Chemical Post-processing Method for Fused Deposition Modeled Three-Dimensional Printing Materials)

  • 김상영
    • 대한기계학회논문집A
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    • 제41권9호
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    • pp.839-844
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    • 2017
  • 최근 3차원 프린팅 기술은 비약적으로 발전하여 쾌속조형기술의 대명사가 되고 있다. FDM 방식의 3D프린터는 쾌속조형에 사용되는 가장 일반적인 프린터이지만, 열에 취약하고, 출력물의 표면이 매끄럽지 못하는 등의 문제를 가지고 있다. 본 논문에서는 FDM방식의 3D프린터로 ABS재질의 시편을 제작하였고, 아세톤에 시편을 담그는 방식으로 후처리를 수행하였다. 공정시간을 변수로 후처리를 진행하였으며, 처음 5초의 후처리 시간동안에는 시편의 표면조도가 급격하게 개선되는 결과를 획득하였으며, 5초 이후에는 표면조도의 변화정도가 미미하였다. 또한, 이러한 후처리 공정은 적지만 시편의 인장강도와 파단변형률을 상승시키는 결과를 나타내었다.

적응단면기법을 이용한 뇌모형제작 (Fabrication of a Brain Model using the Adaptive Slicing Technique)

  • 염상원;엄태준;주영철;김승우;공용해;천인국;방재철
    • 대한기계학회논문집A
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    • 제27권4호
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    • pp.485-490
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    • 2003
  • RP(Rapid Prototyping) has been used in the various industrial applications. This paper presents the optimization techniques fur fabricated 3D model design using RP machine for the medical field. Once the original brain model data are obtained from 2D slices of MRI/CT machine, the data can be modeled as an optimal ellipse. The objective of this study includes optimization of fabrication time and surface roughness using the adaptive slicing method. It can reduce fabrication time without losing surface roughness quality by accumulating the slices with variable thickness. According to the parameter tuning and synthesis of its effect, more suitable parameter values can be obtained by enhanced 3D brain model fabrication. Therefore, accurate 3D brain model fabricated by RP machine can enable a surgeon to perform pre-operation. to make a decision for the operation sequence and to perceive the 3D positions in prototype, before delicate operation of actual surgery.